Single molecule electrical measurements have revolutionised our understanding of how charge flows through individual molecules and biomolecules in a wide variety of environments and are important for applications ranging from energy technology, DNA sequencing and interfacial electrochemistry. Such measurements have been typically made with metallic contacts but lately we have managed to extend this to the semiconductor gallium arsenide. This advance is important since future applications of molecular electronics will rely on integrating molecules alongside conventional semiconductor electronic technologies. In a recent publication in Nano Letters [1] we have shown that it is possible to make measurements of single molecules connected at o...
This review article provides a brief survey of materials, structures and current state-of-the-art te...
abstract: Studying charge transport through single molecules tethered between two metal electrodes i...
Although research on molecular electronics has drawn increasingly more attention in the last decade,...
We demonstrate here a new concept for a metal-molecule-semiconductor nanodevice employing Au and GaA...
In most single- or few-molecule devices, the contact electrodes are simple ohmic resistors. Here we ...
We demonstrate here a new concept for a metal–molecule–semiconductor nanodevice employing Au and GaA...
In most single- or few-molecule devices, the contact electrodes are simple ohmic resistors. Here we ...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
Reversible conductivity modulation through single/few molecules in a metal-molecule-metal device has...
Single-molecule devices potentially offer a promising future for next-generation electronics. Unders...
The manufacture of integrated circuits with single-molecule building blocks is a goal of molecular e...
Metal-molecule-metal junctions have become a widely used test-bed for the study of nanoscale electro...
This study focuses on comparing methods for capturing and measuring the charge transport properties ...
Probing the electronic properties of an individual molecule is a far from trivial task. In order to ...
This thesis represents an excursion into the world of molecular electronics, i.e. the field of resea...
This review article provides a brief survey of materials, structures and current state-of-the-art te...
abstract: Studying charge transport through single molecules tethered between two metal electrodes i...
Although research on molecular electronics has drawn increasingly more attention in the last decade,...
We demonstrate here a new concept for a metal-molecule-semiconductor nanodevice employing Au and GaA...
In most single- or few-molecule devices, the contact electrodes are simple ohmic resistors. Here we ...
We demonstrate here a new concept for a metal–molecule–semiconductor nanodevice employing Au and GaA...
In most single- or few-molecule devices, the contact electrodes are simple ohmic resistors. Here we ...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
Reversible conductivity modulation through single/few molecules in a metal-molecule-metal device has...
Single-molecule devices potentially offer a promising future for next-generation electronics. Unders...
The manufacture of integrated circuits with single-molecule building blocks is a goal of molecular e...
Metal-molecule-metal junctions have become a widely used test-bed for the study of nanoscale electro...
This study focuses on comparing methods for capturing and measuring the charge transport properties ...
Probing the electronic properties of an individual molecule is a far from trivial task. In order to ...
This thesis represents an excursion into the world of molecular electronics, i.e. the field of resea...
This review article provides a brief survey of materials, structures and current state-of-the-art te...
abstract: Studying charge transport through single molecules tethered between two metal electrodes i...
Although research on molecular electronics has drawn increasingly more attention in the last decade,...